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US20150224235A1 - In situ forming hemostatic foam implants - Google Patents

In situ forming hemostatic foam implants
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Publication number
US20150224235A1
US20150224235A1US14/492,393US201414492393AUS2015224235A1US 20150224235 A1US20150224235 A1US 20150224235A1US 201414492393 AUS201414492393 AUS 201414492393AUS 2015224235 A1US2015224235 A1US 2015224235A1
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US
United States
Prior art keywords
polymer
foam
body cavity
formulation
foams
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
US14/492,393
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US9700656B2 (en
Inventor
Upma Sharma
Irina Gitlin
Gregory T. Zugates
Adam Rago
Parisa Zamiri
Rany Busold
Toby Freyman
Robert J. Caulkins
Quynh P. Pham
Changchen You
Jeffrey D. Carbeck
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Arsenal Medical Inc
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Individual
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Publication date
Priority claimed from US12/862,362external-prioritypatent/US20110202016A1/en
Application filed by IndividualfiledCriticalIndividual
Priority to US14/492,393priorityCriticalpatent/US9700656B2/en
Publication of US20150224235A1publicationCriticalpatent/US20150224235A1/en
Assigned to ARSENAL MEDICAL, INC.reassignmentARSENAL MEDICAL, INC.ASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: SHARMA, UPMA, ZAMIRI, PARISA, CARBECK, JEFFREY D., GITLIN, IRINA, RAGO, ADAM, PHAM, QUYNH P., CAULKINS, ROBERT J., FREYMAN, TOBY, YOU, CHANGCHENG, BUSOLD, RANY, ZUGATES, GREGORY T.
Priority to US15/642,968prioritypatent/US10765781B2/en
Application grantedgrantedCritical
Publication of US9700656B2publicationCriticalpatent/US9700656B2/en
Priority to US16/987,754prioritypatent/US11786642B2/en
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Abstract

Systems and methods related to polymer foams are generally described. Some embodiments relate to compositions and methods for the preparation of polymer foams, and methods for using the polymer foams. The polymer foams can be applied to a body cavity and placed in contact with, for example, tissue, injured tissue, internal organs, etc. In some embodiments, the polymer foams can be formed within a body cavity (i.e., in situ foam formation). In addition, the foamed polymers may be capable of exerting a pressure on an internal surface of a body cavity and preventing or limiting movement of a bodily fluid (e.g., blood, etc.).

Description

Claims (24)

    What is claimed is:
  1. 22. A method of treating a patient by forming a polymer foam within a body cavity to control the flow of a bodily fluid, the method comprising:
    combining a first component comprising a first polymer and a second component comprising a second polymer to form a polymer formulation;
    introducing said polymer formulation into a body cavity;
    foaming said polymer formulation; and
    crosslinking at least a portion of said first and second polymers of said polymer formulation to form a polymer foam.
  2. 23. The method of claim15, wherein said polymer foam exerts pressure on an internal surface of said body cavity to at least partially limit the movement of a bodily fluid.
  3. 24. The method of claim1, wherein said polymer formulation is flowable.
  4. 25. The method of claim1, wherein said foaming and said crosslinking occur at substantially the same time.
  5. 26. The method of claim1, wherein said foaming occurs prior to the occurrence of substantial crosslinking.
  6. 27. The method of claim1, wherein said foaming comprises introducing a gas under conditions such that a plurality of bubbles are formed within said polymer formulation.
  7. 28. The method of claim6, wherein said gas is introduced into said polymer formulation from an external source.
  8. 29. The method of claim6, wherein said gas is a reaction product of the crosslinking of said first and second polymers.
  9. 30. The method of claim6, wherein forming said plurality of bubbles causes the polymer formulation to expand.
  10. 31. The method of claim6, wherein said first and second polymers of said polymer formulation crosslink around said bubbles thereby creating a plurality of pores.
  11. 32. The method of claim1, wherein said crosslinking is initiated by the contact of said first and second polymers with an aqueous solution.
  12. 33. The method of claim11, wherein said aqueous solution is blood.
  13. 34. The method of claim1, wherein said crosslinking is catalyzed by an initiator.
  14. 35. The method of claim1, wherein said first component is a polyol selected from the group consisting of polypropylene glycol, polyethylene glycol, polycarbonate, polybutadiene and polyester.
  15. 36. The method of claim1, wherein said second component is a multi-functional isocyanate selected from the group consisting of hexamethylene diisocyanate (HDI), toluene diisocyanate (TDI), methylene diphenyl diisocyanate (MDI) and polymeric methylene diisocyanate.
  16. 37. The method of claim1, wherein said polymer foam is biodegradable.
  17. 38. The method of claim1, wherein said polymer foam is hydrophobic.
  18. 39. The method of claim1, wherein said polymer foam has a rise time of up to 240 seconds.
  19. 40. The method of claim1, wherein said polymer foam has a cream time of up to 25 seconds.
  20. 41. The method of claim1, wherein at least one of said first or second component further comprises a surfactant.
  21. 42. The method of claim1, wherein at least one of said first or second component further comprises a chain extender.
  22. 43. The method of claim1, wherein at least one of said first or second component further comprises a plasticizer.
  23. 44. The method of claim1, wherein at least one of said first or second component further comprises a filler.
  24. 45. The method of claim1, wherein at least one of said first or second component further comprises a pore opener.
US14/492,3932009-08-242014-09-22In situ forming hemostatic foam implantsActive2030-11-16US9700656B2 (en)

Priority Applications (3)

Application NumberPriority DateFiling DateTitle
US14/492,393US9700656B2 (en)2009-08-242014-09-22In situ forming hemostatic foam implants
US15/642,968US10765781B2 (en)2009-08-242017-07-06In situ forming hemostatic foam implants
US16/987,754US11786642B2 (en)2009-08-242020-08-07In situ forming hemostatic form implants

Applications Claiming Priority (5)

Application NumberPriority DateFiling DateTitle
US23631409P2009-08-242009-08-24
US36809510P2010-07-272010-07-27
US12/862,362US20110202016A1 (en)2009-08-242010-08-24Systems and methods relating to polymer foams
US13/209,020US9173817B2 (en)2009-08-242011-08-12In situ forming hemostatic foam implants
US14/492,393US9700656B2 (en)2009-08-242014-09-22In situ forming hemostatic foam implants

Related Parent Applications (1)

Application NumberTitlePriority DateFiling Date
US13/209,020ContinuationUS9173817B2 (en)2009-08-242011-08-12In situ forming hemostatic foam implants

Related Child Applications (1)

Application NumberTitlePriority DateFiling Date
US15/642,968ContinuationUS10765781B2 (en)2009-08-242017-07-06In situ forming hemostatic foam implants

Publications (2)

Publication NumberPublication Date
US20150224235A1true US20150224235A1 (en)2015-08-13
US9700656B2 US9700656B2 (en)2017-07-11

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Family Applications (8)

Application NumberTitlePriority DateFiling Date
US13/209,020Active2031-09-09US9173817B2 (en)2009-08-242011-08-12In situ forming hemostatic foam implants
US14/492,393Active2030-11-16US9700656B2 (en)2009-08-242014-09-22In situ forming hemostatic foam implants
US14/928,857Active2030-10-01US10307515B2 (en)2009-08-242015-10-30In situ forming hemostatic foam implants
US15/642,968Active2031-05-12US10765781B2 (en)2009-08-242017-07-06In situ forming hemostatic foam implants
US15/923,003Active2031-05-13US10980920B2 (en)2009-08-242018-03-16In situ forming hemostatic foam implants
US16/376,087Active2031-04-27US11246964B2 (en)2009-08-242019-04-05In situ forming hemostatic foam implants
US16/987,754Active2031-09-30US11786642B2 (en)2009-08-242020-08-07In situ forming hemostatic form implants
US17/548,844Active2031-06-14US11944724B2 (en)2009-08-242021-12-13In situ forming hemostatic foam implants

Family Applications Before (1)

Application NumberTitlePriority DateFiling Date
US13/209,020Active2031-09-09US9173817B2 (en)2009-08-242011-08-12In situ forming hemostatic foam implants

Family Applications After (6)

Application NumberTitlePriority DateFiling Date
US14/928,857Active2030-10-01US10307515B2 (en)2009-08-242015-10-30In situ forming hemostatic foam implants
US15/642,968Active2031-05-12US10765781B2 (en)2009-08-242017-07-06In situ forming hemostatic foam implants
US15/923,003Active2031-05-13US10980920B2 (en)2009-08-242018-03-16In situ forming hemostatic foam implants
US16/376,087Active2031-04-27US11246964B2 (en)2009-08-242019-04-05In situ forming hemostatic foam implants
US16/987,754Active2031-09-30US11786642B2 (en)2009-08-242020-08-07In situ forming hemostatic form implants
US17/548,844Active2031-06-14US11944724B2 (en)2009-08-242021-12-13In situ forming hemostatic foam implants

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US (8)US9173817B2 (en)

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US20140316012A1 (en)*2013-03-152014-10-23Toby FreymanIn-Situ Forming Foams for Embolizing or Occluding a Cavity
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US10499892B2 (en)2015-08-112019-12-10The Spectranetics CorporationTemporary occlusion balloon devices and methods for preventing blood flow through a vascular perforation
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US20200405921A1 (en)2020-12-31
US9173817B2 (en)2015-11-03
US20120107439A1 (en)2012-05-03
US11786642B2 (en)2023-10-17
US20160279302A1 (en)2016-09-29
US9700656B2 (en)2017-07-11
US10307515B2 (en)2019-06-04
US10765781B2 (en)2020-09-08
US20220105248A1 (en)2022-04-07
US10980920B2 (en)2021-04-20
US20180064855A1 (en)2018-03-08
US11944724B2 (en)2024-04-02
US20190240380A1 (en)2019-08-08
US11246964B2 (en)2022-02-15

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